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首页> 外文期刊>Journal of Membrane Science >Polyimide modification by a linear aliphatic diamine to enhance transport performance and plasticization resistance
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Polyimide modification by a linear aliphatic diamine to enhance transport performance and plasticization resistance

机译:通过线性脂族二胺对聚酰亚胺进行改性,以增强运输性能和抗塑化性

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摘要

A linear aliphatic diamine, ethylenediamine (EDA), for the first time, was used to cross-link polyimides and the EDA modified polyimides were further thermally treated at different conditions to enhance anti-plasticization characteristics. The physicochemical properties of unmodified and modified polyimides were characterized by XPS, FTIR-ATR, DSC, UV and XRD. The results of XPS and FTIR-ATR show that EDA can effectively cross-link polyimides. DSC data indicate that EDA cross-linked polyinnides experience significant changes during thermal treatment. Prolonging the cross-linking time decreases d-space between polymer chains. The coupling effects of EDA induced cross-linking and thermal annealing accelerates charge transfer complexes (CTCs) formation, which densifies polyimide membrane structure. As a result, the gas transport properties of modified polyimides generally show reduced permeability and enhanced selectivity during the cross-linking and thermal annealing. CO, plasticization tests on the resultant membranes indicate that the coupling effects of EDA cross-linking and thermal annealing improve the plasticization resistance from around 300 psia to more than 720 psia, which may be attributed to the effective formation of CTCs. Mixed gas tests demonstrate that the CO2/CH4 selectivity of the EDA cross-linked polyimides was higher in mixed gas tests than that in pure gas tests because of the strong attractions between CO2 and secondary amines. This elucidates why the modified polyimides have better performance in actual separation situations. (c) 2005 Elsevier B.V. All rights reserved.
机译:首次使用线性脂肪族二胺,乙二胺(EDA)交联聚酰亚胺,并对EDA改性的聚酰亚胺在不同条件下进行进一步热处理,以增强抗塑化特性。通过XPS,FTIR-ATR,DSC,UV和XRD对未改性和改性聚酰亚胺的理化性质进行了表征。 XPS和FTIR-ATR的结果表明,EDA可以有效地交联聚酰亚胺。 DSC数据表明,EDA交联聚酰亚胺在热处理过程中会发生重大变化。延长交联时间会减少聚合物链之间的d-空间。 EDA诱导的交联和热退火的耦合效应加速了电荷转移络合物(CTC)的形成,从而使聚酰亚胺膜结构致密。结果,在交联和热退火过程中,改性聚酰亚胺的气体传​​输性能通常显示出降低的渗透性和增强的选择性。在所得膜上进行的CO,增塑测试表明,EDA交联和热退火的偶联作用将抗塑化性从大约300 psia提高到超过720 psia,这可能归因于CTC的有效形成。混合气体测试表明,EDA交联聚酰亚胺在混合气体测试中的CO2 / CH4选择性要比纯气体测试高,这是因为CO2和仲胺之间具有很强的吸引力。这阐明了为什么改性聚酰亚胺在实际分离情况下具有更好的性能。 (c)2005 Elsevier B.V.保留所有权利。

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